mirror of
https://github.com/tumic0/GPXSee.git
synced 2024-11-24 11:45:53 +01:00
496 lines
11 KiB
C++
496 lines
11 KiB
C++
#include <cstring>
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#include <QDataStream>
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#include <QPixmapCache>
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#include <QPainter>
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#include "common/util.h"
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#include "common/color.h"
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#include "qctmap.h"
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#define TILE_SIZE 64
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#define TILE_PIXELS (TILE_SIZE * TILE_SIZE)
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#define MAGIC 0x1423D5FF
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static quint8 bpp(quint8 colours)
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{
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if (colours <= 2)
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return 1;
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if (colours <= 4)
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return 2;
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if (colours <= 8)
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return 3;
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if (colours <= 16)
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return 4;
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if (colours <= 32)
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return 5;
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if (colours <= 64)
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return 6;
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if (colours <= 128)
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return 7;
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return 8;
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}
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static bool validateTable(const QVector<quint8> &table)
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{
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int delta;
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for (int i = 0; i < table.size(); i++) {
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if (table.at(i) == 128) {
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if (i + 2 >= table.size())
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return false;
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delta = 65537 - (256 * table.at(i+2) + table.at(i+1)) + 2;
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if (i + delta >= table.size())
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return false;
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i += 2;
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} else if (table.at(i) > 128) {
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delta = 257 - table.at(i);
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if (i + delta >= table.size())
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return false;
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}
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}
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return true;
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}
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static bool createTable(QDataStream &stream, QVector<quint8> &table)
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{
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int idx = 0;
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int colours = 0;
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int branches = 0;
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table.reserve(256);
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while (stream.status() == QDataStream::Ok && colours <= branches) {
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table.resize(table.size() + 1);
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stream >> table[idx];
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if (table[idx] == 128) {
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table.resize(table.size() + 2);
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stream >> table[++idx];
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stream >> table[++idx];
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branches++;
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} else if (table[idx] > 128)
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branches++;
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else
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colours++;
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idx++;
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}
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return (stream.status() == QDataStream::Ok);
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}
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static bool huffman(QDataStream &stream, quint8 tileData[TILE_PIXELS])
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{
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QVector<quint8> table;
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if (!createTable(stream, table))
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return false;
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if (table.size() == 1) {
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memset(tileData, table[0], TILE_PIXELS);
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} else {
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if (!validateTable(table))
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return false;
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const quint8 *tp = table.constData();
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int bitsLeft = 8;
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int bitVal;
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quint8 val;
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stream >> val;
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for (int pixelnum = 0; pixelnum < TILE_PIXELS; ) {
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if (*tp < 128) {
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tileData[pixelnum++] = *tp;
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tp = table.constData();
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} else {
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bitVal = (val & 1);
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val >>= 1;
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bitsLeft--;
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if (bitsLeft == 0) {
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stream >> val;
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bitsLeft = 8;
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}
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if (bitVal == 0) {
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if (*tp == 128)
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tp += 2;
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tp++;
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} else {
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if (*tp > 128)
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tp += 257 - (*tp);
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else if (*tp == 128)
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tp += 65537 - (256 * tp[2] + tp[1]) + 2;
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}
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}
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}
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}
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return (stream.status() == QDataStream::Ok);
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}
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static bool pixelPacking(QDataStream &stream, quint8 tileData[TILE_PIXELS],
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quint8 colours)
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{
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quint8 shift = bpp(colours);
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quint32 mask = (1 << shift) - 1;
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int wordSize = 32 / shift;
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quint8 paletteIndex[256];
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for (quint8 i = 0; i < colours; i++)
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stream >> paletteIndex[i];
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for (int pixelnum = 0; pixelnum < TILE_PIXELS; ) {
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quint32 colour, val;
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stream >> val;
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for (int runs = 0; runs < wordSize; runs++) {
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colour = val & mask;
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val = val >> shift;
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tileData[pixelnum++] = paletteIndex[colour];
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}
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}
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return (stream.status() == QDataStream::Ok);
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}
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static bool rle(QDataStream &stream, quint8 tileData[TILE_PIXELS],
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quint8 colours)
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{
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quint8 bits = bpp(colours);
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quint8 paletteMask = (1 << bits) - 1;
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quint8 paletteIndex[256];
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quint8 val;
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for (quint8 i = 0; i < colours; i++)
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stream >> paletteIndex[i];
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for (int pixelnum = 0; pixelnum < TILE_PIXELS; ) {
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stream >> val;
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quint8 colour = val & paletteMask;
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quint8 runs = val >> bits;
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while (runs-- > 0)
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tileData[pixelnum++] = paletteIndex[colour];
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}
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return (stream.status() == QDataStream::Ok);
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}
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static bool readString(QDataStream &stream, quint32 offset, QString &str)
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{
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char c;
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QByteArray ba;
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if (!stream.device()->seek(offset))
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return false;
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while (stream.readRawData(&c, 1) == 1) {
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if (c)
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ba.append(c);
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else {
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str = QString::fromUtf8(ba);
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return true;
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}
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}
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return false;
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}
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bool QCTMap::readName(QDataStream &stream)
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{
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quint32 title, name;
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stream >> title >> name;
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if (stream.status() != QDataStream::Ok)
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return false;
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if (name) {
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if (!readString(stream, name, _name))
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return false;
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} else if (title) {
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if (!readString(stream, title, _name))
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return false;
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} else
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_name = Util::file2name(path());
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return true;
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}
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bool QCTMap::readSize(QDataStream &stream)
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{
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stream >> _cols >> _rows;
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return (stream.status() == QDataStream::Ok);
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}
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bool QCTMap::readDatumShift(QDataStream &stream)
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{
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quint32 ext, shift;
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if (!stream.device()->seek(0x54))
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return false;
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stream >> ext;
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if (stream.status() != QDataStream::Ok)
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return false;
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if (!ext)
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return true;
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if (!stream.device()->seek(ext + 4))
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return false;
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stream >> shift;
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if (stream.status() != QDataStream::Ok)
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return false;
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if (!shift)
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return true;
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if (!stream.device()->seek(shift))
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return false;
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stream >> _shiftN >> _shiftE;
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return (stream.status() == QDataStream::Ok);
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}
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bool QCTMap::readHeader(QDataStream &stream)
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{
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quint32 magic, version;
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stream >> magic >> version;
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if (stream.status() != QDataStream::Ok || magic != MAGIC) {
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_errorString = "Not a QCT map";
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return false;
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}
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if (version == 0x20000001) {
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_errorString = "QC3 files not supported";
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return false;
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}
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if (!readSize(stream)) {
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_errorString = "Error reading map dimensions";
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return false;
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}
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if (!readName(stream)) {
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_errorString = "Error reading map name";
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return false;
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}
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if (!readDatumShift(stream)) {
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_errorString = "Error reading datum shift";
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return false;
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}
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return true;
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}
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bool QCTMap::readGeoRef(QDataStream &stream)
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{
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if (!stream.device()->seek(0x60))
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return false;
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stream >> _eas >> _easY >> _easX >> _easYY >> _easXY >> _easXX >> _easYYY
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>> _easYYX >> _easXXY >> _easXXX >> _nor >> _norY >> _norX >> _norYY
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>> _norXY >> _norXX >> _norYYY >> _norYYX >> _norXXY >> _norXXX;
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stream >> _lat >> _latX >> _latY >> _latXX >> _latXY >> _latYY >> _latXXX
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>> _latXXY >> _latXYY >> _latYYY >> _lon >> _lonX >> _lonY >> _lonXX
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>> _lonXY >> _lonYY >> _lonXXX >> _lonXXY >> _lonXYY >> _lonYYY;
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return (stream.status() == QDataStream::Ok);
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}
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bool QCTMap::readPalette(QDataStream &stream)
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{
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if (!stream.device()->seek(0x01A0))
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return false;
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_palette.resize(256);
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quint32 bgr;
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for (int i = 0; i < _palette.size(); i++) {
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stream >> bgr;
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_palette[i] = Color::bgr2rgb(bgr);
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}
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return (stream.status() == QDataStream::Ok);
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}
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bool QCTMap::readIndex(QDataStream &stream)
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{
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if (!stream.device()->seek(0x45A0))
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return false;
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_index.resize(_cols * _rows);
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for (int i = 0; i < _cols * _rows; i++)
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stream >> _index[i];
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return (stream.status() == QDataStream::Ok);
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}
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QCTMap::QCTMap(const QString &fileName, QObject *parent)
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: Map(fileName, parent), _file(fileName), _shiftE(0), _shiftN(0),
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_mapRatio(1.0), _valid(false)
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{
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if (!_file.open(QIODevice::ReadOnly)) {
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_errorString = fileName + ": " + _file.errorString();
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return;
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}
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QDataStream stream(&_file);
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stream.setByteOrder(QDataStream::LittleEndian);
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if (!readHeader(stream))
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return;
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if (!readGeoRef(stream)) {
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_errorString = "Error reading georeference info";
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return;
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}
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if (!readPalette(stream)) {
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_errorString = "Error reading colour palette";
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return;
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}
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if (!readIndex(stream)) {
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_errorString = "Error reading tile index";
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return;
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}
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_file.close();
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_valid = true;
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}
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void QCTMap::load()
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{
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_file.open(QIODevice::ReadOnly);
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}
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void QCTMap::unload()
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{
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_file.close();
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}
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QRectF QCTMap::bounds()
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{
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return QRectF(QPointF(0, 0), QSizeF(_cols * TILE_SIZE, _rows * TILE_SIZE)
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/ _mapRatio);
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}
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QPointF QCTMap::ll2xy(const Coordinates &c)
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{
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double lon = c.lon() - _shiftE;
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double lon2 = lon * lon;
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double lon3 = lon2 * lon;
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double lat = c.lat() - _shiftN;
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double lat2 = lat * lat;
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double lat3 = lat2 * lat;
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double x = _easXXX*lon3 + _easXX*lon2 + _easX*lon + _easYYY*lat3
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+ _easYY*lat2 + _easY*lat + _easXXY*lon2*lat
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+ _easYYX*lat2*lon + _easXY*lon*lat + _eas;
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double y = _norXXX*lon3 + _norXX*lon2 + _norX*lon + _norYYY*lat3
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+ _norYY*lat2 + _norY*lat + _norXXY*lon2*lat
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+ _norYYX*lat2*lon + _norXY*lon*lat + _nor;
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return QPointF(x - _shiftE, y - _shiftN) / _mapRatio;
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}
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Coordinates QCTMap::xy2ll(const QPointF &p)
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{
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qreal x = p.x() * _mapRatio;
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qreal x2 = x * x;
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qreal x3 = x2 * x;
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qreal y = p.y() * _mapRatio;
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qreal y2 = y * y;
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qreal y3 = y2 * y;
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double lon = _lon + _lonX*x + _lonY*y + _lonXX*x2
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+ _lonXY*x*y + _lonYY*y2 + _lonXXX*x3 + _lonXXY*x2*y
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+ _lonXYY*x*y2 + _lonYYY*y3;
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double lat = _lat + _latX*x + _latY*y + _latXX*x2
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+ _latXY*x*y + _latYY*y2 + _latXXX*x3 + _latXXY*x2 * y
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+ _latXYY*x*y2 + _latYYY*y3;
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return Coordinates(lon + _shiftE, lat + _shiftN);
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}
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QPixmap QCTMap::tile(int x, int y)
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{
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static quint8 rowSeq[] = {
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0, 32, 16, 48, 8, 40, 24, 56, 4, 36, 20, 52, 12, 44, 28, 60,
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2, 34, 18, 50, 10, 42, 26, 58, 6, 38, 22, 54, 14, 46, 30, 62,
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1, 33, 17, 49, 9, 41, 25, 57, 5, 37, 21, 53, 13, 45, 29, 61,
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3, 35, 19, 51, 11, 43, 27, 59, 7, 39, 23, 55, 15, 47, 31, 63
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};
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quint8 tileData[TILE_PIXELS], imgData[TILE_PIXELS];
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quint8 packing;
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bool ret;
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if (!_file.seek(_index.at(y * _cols + x)))
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return QPixmap();
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QDataStream stream(&_file);
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stream.setByteOrder(QDataStream::LittleEndian);
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stream >> packing;
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if (stream.status() != QDataStream::Ok)
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return QPixmap();
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if (packing == 0 || packing == 255)
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ret = huffman(stream, tileData);
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else if (packing > 127)
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ret = pixelPacking(stream, tileData, 256 - packing);
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else
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ret = rle(stream, tileData, packing);
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if (!ret)
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return QPixmap();
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for (int i = 0; i < TILE_SIZE; i++)
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memcpy(imgData + i * TILE_SIZE, tileData + rowSeq[i] * TILE_SIZE,
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TILE_SIZE);
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QImage img(imgData, TILE_SIZE, TILE_SIZE, TILE_SIZE,
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QImage::Format_Indexed8);
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img.setColorTable(_palette);
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return QPixmap::fromImage(img);
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}
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void QCTMap::draw(QPainter *painter, const QRectF &rect, Flags flags)
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{
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Q_UNUSED(flags);
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QSizeF ts(TILE_SIZE / _mapRatio, TILE_SIZE / _mapRatio);
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QPointF tl(floor(rect.left() / ts.width()) * ts.width(),
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floor(rect.top() / ts.height()) * ts.height());
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QSizeF s(rect.right() - tl.x(), rect.bottom() - tl.y());
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for (int i = 0; i < ceil(s.width() / ts.width()); i++) {
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for (int j = 0; j < ceil(s.height() / ts.height()); j++) {
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int x = round(tl.x() * _mapRatio + i * TILE_SIZE) / TILE_SIZE;
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int y = round(tl.y() * _mapRatio + j * TILE_SIZE) / TILE_SIZE;
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QPixmap pixmap;
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QString key = path() + "/" + QString::number(x) + "_"
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+ QString::number(y);
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if (!QPixmapCache::find(key, &pixmap)) {
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pixmap = tile(x, y);
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if (!pixmap.isNull())
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QPixmapCache::insert(key, pixmap);
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}
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if (pixmap.isNull())
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qWarning("%s: error loading tile image", qPrintable(key));
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else {
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pixmap.setDevicePixelRatio(_mapRatio);
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QPointF tp(tl.x() + i * ts.width(), tl.y() + j * ts.height());
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painter->drawPixmap(tp, pixmap);
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}
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}
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}
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}
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Map *QCTMap::create(const QString &path, const Projection &, bool *isDir)
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{
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if (isDir)
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*isDir = false;
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return new QCTMap(path);
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}
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